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Numerical simulation of the effects of the space-variant blank-holder force and geometrical variables in the deep-drawing process

机译:拉深过程中空变坯料夹持力和几何变量影响的数值模拟

摘要

The increase in quality requirements for the formed products makes it desirable to find an effective way of controlling the process to achieve complex shape products without defects. It has been proven by many researchers that the space-variant blank-holder force can improve the quality of forming to achieve a targeted shape product (no wrinkling, a high drawing depth, less variation in thickness, etc.). In the forming process, the most common problems, tearing and wrinkling, generally result from the strain condition. In this paper the effect on the strain path with various types of space-variant blank-holder force and other geometrical parameters, such as the fillet radius, the blank size, and the clearance between the die and the punch, were compared and analysed. The results showed that the space-variant blank-holder force and some geometrical parameters affect the strain distribution to various extents during the forming process. The parameters influence the negative minor strain much more than the maximum major strain.
机译:对成形产品的质量要求的增加使得期望找到一种控制过程的有效方式以实现没有缺陷的复杂形状的产品。许多研究人员已经证明,随空间变化的毛坯夹持力可以提高成形质量,以达到目标形状产品(无皱纹,高拉深深度,厚度变化较小等)。在成型过程中,最常见的问题是撕裂和起皱,通常是由应变条件引起的。在本文中,比较并分析了各种类型的空间变量毛坯夹持力和其他几何参数(例如圆角半径,毛坯尺寸以及冲模与冲头之间的间隙)对应变路径的影响。结果表明,在成形过程中,随空间变化的毛坯支座力和一些几何参数会在不同程度上影响应变分布。参数对负次要应变的影响远大于最大主应变。

著录项

  • 作者

    Wang L; Lee TC;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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